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The transcription regulator ATF4 is a mediator of skeletal muscle aging
Matthew J. Miller
, George R. Marcotte
, Nathan Basisty
, Cameron Wehrfritz
, Zachary C. Ryan
, Matthew D. Strub
, Andrew T. McKeen
, Jennifer I. Stern
, Karl A. Nath
, Blake B. Rasmussen
, Andrew R. Judge
, Birgit Schilling
, Scott M. Ebert
, Christopher M. Adams
Biochemistry & Molecular Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Scopus citations
Overview
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Keyphrases
6 Months of Age
10%
Activating Transcription Factor 4 (ATF4)
100%
Active muscle
10%
Adequate nutrition
10%
Age-related Decline
10%
Age-related muscle Loss
10%
Aging
10%
Change Characteristics
10%
Degenerative Process
10%
Exercise Capacity
10%
Functional Deficits
10%
Knock-in Mouse Model
10%
Littermate Controls
10%
Molecular Mechanism
10%
Muscle Aging
20%
Muscle Atrophy
10%
Muscle Function
10%
Muscle Mass
20%
Muscle Quality
10%
Muscle Weakness
10%
Older Adults
10%
Quality of Life
10%
Regulatory Proteins
10%
Senescence-associated
10%
Skeletal muscle Aging
100%
Skeletal muscle Atrophy
10%
Skeletal muscle Mass
10%
Skeletal muscle Metabolism
10%
Skeletal muscle Strength
10%
Skeletal muscle Structure
10%
Transcription Regulator
100%
Transcriptional Changes
10%
Wild Mice
20%
Young Animals
10%
Biochemistry, Genetics and Molecular Biology
ATF4
100%
Knockout Mouse
10%
Mediator
100%
Metabolic Pathway
10%
Muscle Strength
20%
Skeletal Muscle
100%
Transcription
100%
Wild Type Mouse
20%
Medicine and Dentistry
Knockout Mouse
20%
Mediator
100%
Muscle Atrophy
40%
Muscle Strength
40%
Muscle Weakness
20%
Nutrition
20%
Quality of Life
20%
Regulator Protein
20%
Skeletal Muscle
100%
Skeletal Muscle Atrophy
20%
Skeletal Muscle Metabolism
20%
Skeletal Muscle Structure
20%
Neuroscience
ATF4
100%
Metabolic Pathway
10%
Muscle Atrophy
20%
Quality of Life
10%
Regulator Protein
10%
Skeletal Muscle
100%
Skeletal Muscle Atrophy
10%